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SUMF1基因中一个新型错义突变和一个插入性截短突变的分子评估

Molecular evaluation of a novel missense mutation & an insertional truncating mutation in SUMF1 gene.

作者信息

Kotecha Udhaya H, Movva Sireesha, Sharma Deepak, Verma Jyotsna, Puri Ratna Dua, Verma Ishwar Chander

机构信息

Center of Medical Genetics, Sir Ganga Ram Hospital, New Delhi, India.

出版信息

Indian J Med Res. 2014 Jul;140(1):55-9.

Abstract

BACKGROUND & OBJECTIVES: Multiple suphphatase deficiency (MSD) is an autosomal recessive disorder affecting the post translational activation of all enzymes of the sulphatase family. To date, approximately 30 different mutations have been identified in the causative gene, sulfatase modifying factor 1 (SUMF1). We describe here the mutation analysis of a case of MSD.

METHODS

The proband was a four year old boy with developmental delay followed by neuroregression. He had coarse facies, appendicular hypertonia, truncal ataxia and ichthyosis limited to both lower limbs. Radiographs showed dysostosis multiplex. Clinical suspicion of MSD was confirmed by enzyme analysis of four enzymes of the sulphatase group.

RESULTS

The patient was compound heterozygote for a c.451A>G (p.K151E) substitution in exon 3 and a single base insertion mutation (c.690_691 InsT) in exon 5 in the SUMF1 gene. The bioinformatic analysis of the missense mutation revealed no apparent effect on the overall structure. However, the mutated 151-amino acid residue was found to be adjacent to the substrate binding and the active site residues, thereby affecting the substrate binding and/or catalytic activity, resulting in almost complete loss of enzyme function.

CONCLUSIONS

The two mutations identified in the present case were novel. This is perhaps the first report of an insertion mutation in SUMF1 causing premature truncation of the protein.

摘要

背景与目的

多种硫酸酯酶缺乏症(MSD)是一种常染色体隐性疾病,会影响硫酸酯酶家族所有酶的翻译后激活。迄今为止,在致病基因硫酸酯酶修饰因子1(SUMF1)中已鉴定出约30种不同突变。我们在此描述1例MSD的突变分析。

方法

先证者是一名4岁男孩,有发育迟缓并伴有神经功能倒退。他有面容粗糙、四肢张力亢进、躯干共济失调以及仅累及双下肢的鱼鳞病。X线片显示多发性骨发育异常。通过对硫酸酯酶组的4种酶进行酶分析,临床对MSD的怀疑得到证实。

结果

该患者为SUMF1基因外显子3中c.451A>G(p.K151E)替换和外显子5中单个碱基插入突变(c.690_691 InsT)的复合杂合子。对该错义突变的生物信息学分析显示对整体结构无明显影响。然而,发现突变的151位氨基酸残基与底物结合位点和活性位点残基相邻,从而影响底物结合和/或催化活性,导致酶功能几乎完全丧失。

结论

本病例中鉴定出的两种突变是新的。这可能是SUMF1基因中导致蛋白质过早截断的插入突变的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef02/4181161/99d83d9eccd1/IJMR-140-55-g001.jpg

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